Answer: -7x3 + 13x2 + 9x - 12
Answer:
3(5x2+2x-4)-x7x2+2x-3)
15 x 6 + 6x -12 - x7 + x2 + 2x -3
90 + 6x - 12 - x7 + x2 + 2x -3
(6x + 2x) (+90 - 12 - 3) (-x7 + x2)
8x + 75 - x5
B 30 26 27 37 24
Assume the paired data came from a population that is normally distributed.
Answer:
9.0
Step-by-step explanation:
Mean = Sum of terms/Number of terms
For Data Set A
Mean = 32 + 30 + 49 + 45 + 33/5
= 189/5
= 37.8
For Data Set B
Mean = 30 + 26 + 27 + 37 + 24/5
= 144/5
= 28.8
Hence, the Mean difference is calculated as the absolute difference between the Mean of Data set A and Data set B
Mean Difference = 37.8 - 28.8
= 9.0
Answer:
i think it 29.92 but there another question like this
Step-by-step explanation:
.
Answer:
the answer is
Step-by-step explanation:
3(x+y)+4(y+x)
Answer:
7x+7y
Step-by-step explanation:
3x+3y+4y+4x
7x+7y
Answer: 0.3576
Step-by-step explanation:
Let the probability that the units that have broken fans from the seven units chosen at random be x.
The probability that three of them have broken fans will be 0.3576. Check the attachment for details
Answer:
36,000,000 bps
Step-by-step explanation:
Matrix of 480 by 500 = 480 X 500 = 240,000 pixels
Intensity values per pixel = 32. This simply means the color variations in this TV.
The bit per pixel for an intensity value of 32 is 5 (That's 2 raised to the power of 5)
Pictures sent per second = 30
Source rate R (bps) = Total number of pixels in the matrix X bit per pixel X Number of pictures sent per second.
Source rate R (bps) = 240,000 X 5 X 30 = 36,000,000 bps
The source rate for the digitized TV picture is 230,400,000 bps.
The source rate can be calculated by multiplying the number of pixels per picture element by the number of intensity values per pixel and by the number of pictures sent per second.
So, the source rate R (bps) is given by:
R = (480 * 500) * 32 * 30
Calculating this, we find that the source rate is 230,400,000 bps.
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